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CrI3(CHROMIUM IODIDE)

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Regular price ¥3,704.00
Sale price ¥3,704.00 Regular price ¥4,074.00
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CrI3(CHROMIUM IODIDE)

CrI3(CHROMIUM IODIDE)

Regular price ¥3,704.00
Sale price ¥3,704.00 Regular price ¥4,074.00
Unit price
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CrI₃ (Chromium Triiodide) Introduction

CrI₃ (Chromium Triiodide) is an inorganic compound composed of chromium (Cr) and iodine (I). It is a transition metal halide with an interesting layered structure, which has drawn considerable attention in recent years due to its unique magnetic properties and potential applications in materials science, particularly in the field of spintronics and two-dimensional (2D) materials.

Physical Properties

  • Appearance: CrI₃ typically appears as a purple to dark-red solid.
  • Crystal Structure: CrI₃ has a layered hexagonal crystal structure. This layered structure is similar to other van der Waals materials, which allows for the possibility of exfoliating CrI₃ into monolayers or few-layer films, making it a candidate for 2D material research.
  • Magnetic Properties: CrI₃ is ferromagnetic at low temperatures, making it one of the few 2D ferromagnetic materials known. Its magnetic properties are highly dependent on the number of layers, which can transition between different magnetic phases when exfoliated into monolayers or bilayers.
  • Electrical Properties: In bulk form, CrI₃ exhibits semiconducting properties, and its electronic behavior can be modified by controlling its thickness, making it a promising material for various electronic applications.

Applications

  1. Spintronics: CrI₃ is a promising candidate for spintronic devices, which exploit the spin of electrons in addition to their charge for enhanced functionality. Its ferromagnetic properties make it particularly attractive for use in spintronic applications such as magnetic sensors, memory devices, and spin valves.

  2. 2D Materials: Due to its layered structure, CrI₃ can be exfoliated into thin monolayers, opening up opportunities for its use in 2D material-based applications. These include flexible electronics, high-performance sensors, and next-generation transistors.

  3. Magnetic Devices: The ferromagnetic nature of CrI₃ makes it a potential candidate for use in magnetic memory devices, such as magnetic random access memory (MRAM), and other data storage technologies. Its ability to maintain magnetic order even in thin layers is of particular interest.

  4. Photonic and Optoelectronic Devices: CrI₃ has been studied for potential applications in optoelectronic devices, such as light-emitting diodes (LEDs) and photodetectors. Its magnetic properties combined with its semiconductor behavior can lead to novel photonic applications.

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